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Pulsatile flow through a constricted tube: effect of stenosis morphology on hemodynamic parameters

机译:狭窄管中的搏动流:狭窄形态对血液动力学参数的影响

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In this paper, we investigate pulsatile flow through a constricted tube with the aim of assessing the effect of stenosis morphology on hemodynamic parameters. The fluid-solid interaction of pulsatile flow through a compliant tube with elastic walls was simulated using an arbitrary Lagrangian-Eulerian (ALE) finite-element method. We consider blood flow through various mild stenoses of 25.8% severity in diameter with trapezoidal and bell-like morphologies at a fixed Womersley number of 7.75. The results show that the distribution of the time-averaged wall shear stress (TAWSS), which is the main factor affecting the hemodynamic parameters, strongly depends on the axial stretch of the stenosis; elongation of the stenotic region increases by 41.1% the maximum TAWSS for stenoses of trapezoidal morphology whereas the maximum TAWSS decreases by 14.8% for the corresponding stenoses of bell-like morphology. The present findings indicate that risk factors due to atherosclerosis may vary in a complicated manner as an atheromatous plaque gradually builds up and morphs with time.
机译:在本文中,我们研究了通过狭窄管的搏动流,目的是评估狭窄形态对血液动力学参数的影响。使用任意拉格朗日-欧拉(ALE)有限元方法模拟了脉动流通过具有弹性壁的柔性管的流固耦合。我们认为血液流经直径为25.8%的各种轻度狭窄,具有固定的Womersley数为7.75的梯形和钟形形态。结果表明,时间平均壁切应力(TAWSS)的分布是影响血液动力学参数的主要因素,在很大程度上取决于狭窄部位的轴向拉伸。对于梯形形态的狭窄,狭窄区域的伸长最大TAWSS增加了41.1%,而对于钟形形态的狭窄,最大TAWSS减少了14.8%。本研究结果表明,由于动脉粥样硬化斑块逐渐积累并随时间变化,由动脉粥样硬化引起的危险因素可能以复杂的方式变化。

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